Engineered Protein Inhibitors of SARS-CoV-2 Entry: Difference between revisions

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==Protein Inhibitor Development==
==Protein Inhibitor Development==
Protein inhibitors were thought of as a new idea for creating vaccines due to their smaller size and better stability compared to antibody vaccines<ref name="Cao">DOI:10.1126/science.abd9909</ref>. These protein inhibitors, also referred to as mini-binders, interact with the receptor binding domain of the spike protein, <scene name='10/1078124/Spikeblockedbyminibinder/3'>preventing association of the viral cell with ACE2.</scene>
Protein inhibitors were thought of as a new idea for creating vaccines due to their smaller size and better stability compared to antibody vaccines<ref name="Cao">DOI:10.1126/science.abd9909</ref>. These protein inhibitors, also referred to as mini-binders, interact with the receptor binding domain of the spike protein, <scene name='10/1078124/Spikeblockedbyminibinder/3'>preventing association of the viral cell with ACE2.</scene>
===The Process of Discovery===
[[Image:AHB2_Method.png|300 px|right|thumb|Figure 2: The use of the Rosetta Blueprint protein design to create the AHB2 inhibitor (7JZL & 7UHB).]]
[[Image:AHB2_Method.png|300 px|right|thumb|Figure 2: The use of the Rosetta Blueprint protein design to create the AHB2 inhibitor (7JZL & 7UHB).]]
[[Image:LCB_Method.png|300 px|right|thumb|Figure 3:The use of the De Novo protein design to create the LCB1 and LCB3 inhibitors (7JZL).]]
[[Image:LCB_Method.png|300 px|right|thumb|Figure 3:The use of the De Novo protein design to create the LCB1 and LCB3 inhibitors (7JZL).]]
===The Process of Discovery===
The first mini-binder to be created to combat COVID-19 is called <scene name='10/1078124/Ahb2_general/2'>AHB2</scene>. In order to ensure that the mini-binder would bind to the same RBD that the ACE2 was bound to, AHB2 was designed by looking at the specific sequence of ACE2 to find the alpha-helix that makes interactions with the spike receptor binding domain. This design process is referred to as the Rosetta Blueprint protein design. Figure 2 shows the RBD trimer with one part of ACE2 being used for the reference alpha helix to create AHB2 <ref name="Cao">PMID:32907861</ref>.
The first mini-binder to be created to combat COVID-19 is called <scene name='10/1078124/Ahb2_general/2'>AHB2</scene>. In order to ensure that the mini-binder would bind to the same RBD that the ACE2 was bound to, AHB2 was designed by looking at the specific sequence of ACE2 to find the alpha-helix that makes interactions with the spike receptor binding domain. This design process is referred to as the Rosetta Blueprint protein design. Figure 2 shows the RBD trimer with one part of ACE2 being used for the reference alpha helix to create AHB2 <ref name="Cao">PMID:32907861</ref>.



Revision as of 19:27, 22 April 2025

SARS-CoV-2 Spike Protein (7JZL):SARS-CoV-2 Spike Protein (7JZL): A trimer responsible for interacting with host ACE2 receptors to deliver the virus into host cells. Receptor binding domains (RBDs) are highlighted at the top of each monomer.

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References


PDB Files

[1]https://www.rcsb.org/structure/7UHB - SARS-CoV-2 spike in complex with AHB2-2GS-SB175 (local refinement of the RBD and AHB2)

[2]https://www.rcsb.org/structure/8YZC - Structure of BA.2.86 spike protein in complex with ACE2

[3]https://www.rcsb.org/structure/7JZL - SARS-CoV-2 spike in complex with LCB1 (2RBDs open)

[4]https://www.rcsb.org/structure/6LZG - Structure of novel coronavirus spike receptor-binding domain complexed with its receptor ACE2

[5]https://www.rcsb.org/structure/7CDI - Crystal structure of SARS-CoV-2 antibody P2C-1F11 with RBD

[6]https://www.rcsb.org/structure/7JZM - SARS-CoV-2 spike in complex with LCB3 (local refinement of the RBD and LCB3)

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